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Behaviour of high strength steel columns under fire conditions

机译:高强度钢柱在火灾条件下的行为

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With the scarcity of performance data on HSS columns at elevated temperature, a numerical model, which considered geometric imperfections and material non-linearity has been developed in ABAQUS (2014) and validated using experimental data on HSS at ambient temperature and mild steel grades at elevated temperature. After the model was validated, parametric studies incorporating material properties of two different steel grades: S690QL and S700MC were done, in order to determine the influence of the steel grades on the buckling behaviour and assess the suitability of the Eurocode fire resistance design rules for HSS columns. The results showed that the Eurocode generally provides conservative (i.e. safe) results with respect to the buckling coefficients and safely predicts the buckling resistance of columns made from S700MC, while a lower buckling curve may be needed for columns made from S690QL. In addition, because of the various alloying and production routes employed to produce HSS, variations in the stress-strain responses was also observed, in turn, this influenced the buckling response and highlighted possible unconservativisms (i.e. unsafe) in the Eurocode design approach as a result of generalising the material response. (C) 2018 Published by Elsevier Ltd.
机译:由于高温下HSS柱的性能数据稀缺,ABAQUS(2014)建立了一个考虑几何缺陷和材料非线性的数值模型,并使用环境温度和高温下的低碳钢等级的实验数据进行了验证。温度。验证模型后,进行了包含两种不同钢种:S690QL和S700MC的材料性能的参数研究,以确定钢种对屈曲行为的影响,并评估Eurocode耐火设计规则对HSS的适用性列。结果表明,欧洲规范通常提供关于屈曲系数的保守(即安全)结果,并可以安全地预测S700MC制成的色谱柱的抗屈曲性,而S690QL色谱柱可能需要较低的屈曲曲线。另外,由于用于生产高速钢的各种合金化和生产途径,还观察到了应力应变响应的变化,进而影响了屈曲响应,并突出了欧洲规范设计方法中可能存在的不守恒性(即不安全)。概括物质反应的结果。 (C)2018由Elsevier Ltd.发布

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